Question
Question: A lift performs the first part of its ascent with uniform acceleration, a, and the remaining with un...
A lift performs the first part of its ascent with uniform acceleration, a, and the remaining with uniform retardation, 2a. If, t, is the time of ascent, the depth of the shaft is:
A. 4at2
B. 3at2
C. 2at2
D. 8at2
Solution
Hint: We know the equations of motion, and they should be applied in this question to find the depth of the shaft i.e. S=ut+21at2. Moreover, in these questions we need to let quantities such as time or displacement.
Complete step-by-step answer:
Formula used : S=ut+21at2
Given, time of ascent=t
Acceleration in first part =a
Acceleration in the second part = 2a
Let the time taken in 1st part = t1
Let the time taken in 2nd part= t2
Since, the acceleration in part2 is twice that of initial, so the time taken in second part will be half of that of time taken in 1st part.
t2=2t1
Total time, t=t1+t2
Therefore, t1=32t
In the first part:
S=ut+21at2
Since u=0
S1=21at2……..(i)
In the second part:
S=ut+21at2
S2=21(2a)t22
S2=21(2a)t22……ii)
Let the total depth be S
Therefore, S=S1+S2
Using equation (i) and (ii),
S=21at12+21(2a)t22 S=21at12+21(2a)(2t1)2
S=43at12
S=43a(32t)2 S=3at2
Hence, the answer to this question is S=3at2.
Hence, the correct option is B.
Note: In this type of question we need to find the basic relationships between quantities such as time or displacement and then solve using the equations of motion.